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Biomedical subjects

B L Clarke

Publications and source records attributed to B L Clarke.

At least 19 recordsLinked to original sources

Changes in quantitative bone histomorphometry in aging healthy men.

Changes in bone mineral metabolism with aging in healthy men and the roles of various factors in the pathogenesis of age-related changes in quantitative bone histomorphometry in men are poorly defined. To clarify these changes and factors, serum and urinary biochemical parameters and iliac crest bone biopsies were evaluated in 43 healthy men, aged 20-80 yr. The static histomorphometric parameters, cancellous bone volume and osteoblast-osteoid interface, decreased by 40.0% and 19.2%, respectively, between 20-80 yr of age. The dynamic histomorphometric parameters, double and single labeled osteoid, also decreased by 18.6% and 18.0%, respectively, over this period. None of the other static or dynamic histomorphometric parameters changed with age in this population sample of healthy men. Univariate analysis of static bone histomorphometric parameters and biochemical parameters revealed significant correlations between osteoid surface and intact PTH (r = 0.37; P = 0.015); osteoclast surface and serum total testosterone (r = 0.36; P = 0.016), estradiol (r = 0.40; P = 0.009), and FSH (r = 0.49; P = 0.001); osteoblast-osteoid interface and serum phosphate (r = 0.31; P = 0.046); and cortical thickness and serum total calcium (r = 0.38; P = 0.013). Univariate analysis of dynamic bone histomorphometric parameters and biochemical parameters revealed correlations between mineral apposition rate and serum total testosterone (r = 0.32; P = 0.037); total volume-referent bone formation rate and serum osteocalcin (r = 0.43; P = 0.004), total testosterone (r = 0.47; P = 0.001), estradiol (r = 0.35; P = 0.023), and dehydroepinadrosterone sulfate (r = 0.31; P = 0.045); and mean wall thickness and serum total calcium (r = 0.36; P = 0.019) and creatinine clearance (r = 0.42; P = 010). Mineralization lag time and serum phosphate (r = -0.39; P = 0.012) and urinary total pyridinoline (r = 0.36; P = 0.023), and mean wall thickness and urinary total pyridinoline (r = -0.38; P = 0.013), were inversely correlated. Multiple regression analysis using all-subset analysis comparing cancellous bone volume to serum and urinary biochemical parameters in these men indicated that the log free androgen index and body weight best predicted the age-related decline in iliac crest cancellous bone volume (r2 = 0.19; P = 0.015). Multiple regression analysis by the same method, comparing bone density at different skeletal sites to bone histomorphometric parameters, indicated that lumbar spine bone mineral density (BMD) was best predicted by cancellous bone volume and mineral apposition rate (r2 = 0.31; P = 0.001), femoral neck BMD by cancellous bone volume and osteoid surface (r2 = 0.19; P = 0.020), femoral greater trochanter BMD by cortical thickness and single labeled osteoid surface (r2 = 0.13; P = 0.060), and total body BMD by cancellous bone volume and surface-based bone formation rate (r2 = 0.31; P = 0.001). In summary, cancellous bone volume, osteoblast-osteoid interface, and double and single labeled osteoid decreased with age in this sample of healthy men. The lack of detectable change in bone density at some skeletal sites in these men may be due to the small sample size or other confounding factors. Multivariate analysis suggests that different combinations of histomorphometric parameters predict bone density at different skeletal sites, and that cancellous bone volume predicts bone density at the lumbar spine, femoral neck, and total body, but not at the femoral greater trochanter. We conclude that alterations in several biochemical parameters are important in the pathogenesis of age-related bone loss in healthy men.

Adult

Calcium uptake by ACTH-stimulated lymphocytes: what is the physiological significance?

Adrenocorticotropic hormone (ACTH) increases cAMP and cGMP concentrations in both adrenal and lymphoid cells, and requires extracellular Ca to have biological activity. The requirement for Ca has been difficult to characterize in terms of the channel identity and whether the committing step for steroidogenesis in the adrenal cells requires Ca. In lymphocytes, ACTH has a biphasic effect on functions such as proliferation and immunoglobin secretion. Current information is consistent with suppressive effects of high ACTH concentrations being mediated by cAMP. Stimulatory effects of ACTH concentrations are hypothesized to be mediated by Ca uptake. This review will discuss the localization of Ca signals to discrete domains within cells and the receptor- and tissue-specificity of their subcellular distribution. Considering the diversity of possible mechanisms, a hypothesis for the role of ACTH-stimulated Ca uptake during mitogen activation of T-cell lymphocytes will be presented.

Adjuvants, Immunologic

Osteomalacia associated with adult Fanconi's syndrome: clinical and diagnostic features.

OBJECTIVE: Osteomalacia associated with adult acquired Fanconi's syndrome is thought to result from hypophosphataemia and relative 1,25-dihydroxyvitamin D deficiency. We have followed the clinical and diagnostic features of patients with osteomalacia associated with adult Fanconi's syndrome, with particular emphasis on their responses to treatment with calcium, phosphate and vitamin D. DESIGN: Retrospective Mayo Clinic case-note review from 1975 to 1994 and prospective follow-up study, combined with literature review. PATIENTS: Eleven patients (7 male, 4 female) were identified who satisfied criteria for diagnosis of osteomalacia and adult Fanconi's syndrome. Twenty-five additional patients were identified in a literature review from 1954 to the present. METHODS: Clinical history and physical examination, serum and urine bone and mineral parameter, X-ray radiography and iliac crest bone histomorphometry. RESULTS: All patients presented with typical symptoms of osteomalacia, including lower extremity or low back bone pain, and all had fractures, pseudofractures, and/or bone demineralization on X-ray radiography. Osteomalacia and Fanconi's syndrome were diagnosed concurrently in 10 patients, whereas osteomalacia preceded diagnosis of Fanconi's syndrome by 5 years in one patient. Pre-treatment bone biopsies in 9 of the 11 patients demonstrated increased osteoid surface, volume and width. In the one patient labelled with tetracycline prior to biopsy, mineralization lag time was prolonged at 111 days (normal 19.2 +/- 1.0 days). Hypophosphataemia, inappropriately low 1,25-dihydroxyvitamin D levels, renal insufficiency, and chronic acidosis due to bicarbonate leak and uraemia, contributed to the osteomalacia in these patients. Secondary hyperparathyroidism was present in two patients. Eight of the 11 patients with osteomalacia associated with Fanconi's syndrome had monoclonal disorders, including multiple myeloma or lymphoma, many of them manifest by light-chain proteinuria. Over a mean patient follow-up period of 46 months (range 1-239 months), patients responded symptomatically to calcium, phosphate, and vitamin D replacement typically within 1-6 months. In 8 patients in whom follow-up data were available, post-treatment serum phosphate and 1,25-dihydroxyvitamin D levels improved in the setting of stable mild renal insufficiency; only one patient developed end-stage renal failure after 20 years, suggesting that these patients do not invariably progress rapidly to renal failure. CONCLUSIONS: Regardless of the underlying cause, osteomalacia associated with adult acquired Fanconi's syndrome appears to respond well to calcium, phosphate, and vitamin D replacement. These patients do not appear to necessarily require 1,25-dihydroxyvitamin D replacement.

Adult

Peptide design using a genetically patterned binary code: growth hormone-releasing hormone as a model.

This paper reviews a method for the design of peptides and proteins of predefined structure and function and provides an example. Specifically, an analog of rat growth hormone-releasing hormone (GHRH) (residues 1-23) was synthesized by solid-phase methods based on a reversed sequence of the mRNA for GHRH (1-23). The new peptide, designated GHRH 3'-5', had a hydropathic profile similar to that of native GHRH 5'-3' (GHRH) but had only 17% primary sequence homology. GHRH 3'-5' specifically bound to the GHRH receptor on rat pituitary cells and to polyclonal anti-GHRH antibody in ELISA and RIA procedures. Additionally, GHRH 3'-5' blocked the in vitro stimulation of GH RNA synthesis and in vitro and in vivo GH release mediated by GHRH. These data show that 3'-5' GHRH with little sequence homology to native rat GHRH is an antagonist and further supports the importance of the linear pattern of hydropathy to the gross secondary and/or tertiary structure and rudimentary function of peptides and proteins. The impact of these findings on the interaction of complementary peptides is discussed.

Amino Acid Sequence

Age- and gender-related changes in the distribution of osteocalcin in the extracellular matrix of normal male and female bone. Possible involvement of osteocalcin in bone remodeling.

With increasing age, bone undergoes changes in remodeling that ultimately compromise the structural integrity of the skeleton. The presence of osteocalcin in bone matrix may alter bone remodeling by promoting osteoclast activity. Whether age- and/or gender-related differences exist in the distribution of osteocalcin within individual bone remodeling units is not known. In this study, we determined the immunohistochemical distribution of osteocalcin in the extracellular matrix of iliac crest bone biopsies obtained from normal male and female volunteers, 20-80 yr old. Four different distribution patterns of osteocalcin within individual osteons were arbitrarily defined as types I, II, III, or IV. The frequency of appearance of each osteon type was determined as a percent of the total osteons per histologic section. The proportion of osteons that stained homogeneously throughout the concentric lamellae (type I) decreased in females and males with increasing age. The proportion of osteons that lack osteocalcin in the matrix immediately adjacent to Haversian canals (type III) increased in females and males with age. Osteons staining intensely in the matrix adjacent to Haversian canals (type II) increased in females and was unchanged in aging males. Osteons that contained osteocalcin-positive resting lines (type IV) increased in bone obtained from males with increasing age but were unchanged in females. Sections of bone immunostained for osteopontin (SPP-I), osteonectin, and decorin did not reveal multiple patterns or alterations in staining with gender or increasing age. We suggest that the morphology of individual bone remodeling units is heterogeneous and the particular morphologic pattern of osteocalcin distribution changes with age and gender. These results suggest that differences in the distribution of osteocalcin in bone matrix may be responsible, in part, for the altered remodeling of bone associated with gender and aging.

Adult

Adrenocorticotropic hormone stimulates a transient calcium uptake in rat lymphocytes.

Freshly isolated rat lymphocytes were tested for corticotropin (ACTH)-dependent calcium uptake. Physiological levels of corticotropin (0.01-1 nM) were found to stimulate both an uptake of 45Ca2+ and a rise in cAMP. The calcium uptake was delayed by 2 min after ACTH addition, but was rapid and transient after the onset of uptake. The extent of calcium uptake was dose dependent on the corticotropin concentration and reached a maximum by 1 nM. Several fragments of corticotropin were tested for activity; both full-length 1-39 and a functional truncated form, 1-25, had equivalent effects on 45Ca influx at 1 nM; however, alpha MSH-(1-13), ACTH-(11-24), or a mixture of alpha MSH and ACTH-(11-24) had no effect on 45Ca influx. Extracellular calcium uptake was blocked by the calcium channel blockers lanthanum, diltiazem, nifedipine, and omega-conotoxin. Splenic lymphocytes that express ACTH receptors had ligand-dependent calcium uptake, but thymocytes that lack ACTH receptors had no ligand-dependent calcium uptake. A mouse adrenal cell line, Y-1, showed the same 45Ca uptake kinetics. These findings demonstrate that both lymphocytes and adrenal cells have a functional ACTH-dependent calcium uptake mechanism.

Adrenal Glands

The relationship between the hypothalamic-pituitary adrenal axis and oral-induced immunosuppression.

The effects of hypophysectomy on the immune response in mice orally immunized with sheep red blood cells (SRBC) was investigated. Hypophysectomized and sham-operated animals display elevated serum levels of SRBC-specific IgG. In addition, splenic lymphocytes obtained from hypophysectomized mice (i) exhibit an enhanced blastogenic response to SRBC, (ii) present with a lower frequency of T (thy 1.2+) cells and produce more total IgG polyclonal antibody in culture in comparison to splenic lymphocytes obtained from non-operated (control) mice. Peyer's patch (PP) and mesenteric lymph node (MLN) lymphocytes from hypophysectomized animals secreted elevated levels of total IgG compared to saline-treated controls. The culture supernates of splenic lymphocytes obtained from hypophysectomized, sham-operated, and control animals contain interleukin-2 suppressive factors as determined using the CTLL-2 cell line. The suppressive effect mediated by the lymphocyte culture supernates is less apparent on interleukin-4-mediated CTLL-2 proliferation. The culture supernates from PP lymphocytes obtained from hypophysectomized mice contain potent interleukin-2 suppressive factors while PP lymphocyte culture supernates from sham-operated and control mice displayed no suppressive activity. Likewise, culture supernates from MLN lymphocytes of hypophysectomized, sham-operated, and control mice possessed no suppressive factors for interleukin-2- or interleukin-4-mediated CTLL-2 proliferation. Taken together, the identification of suppressive factors in the lymphocyte culture supernates along with the enhanced blastogenic response and serum anti-SRBC IgG levels in hypophysectomized mice suggests neuroendocrine pathways regulate oral-induced tolerance.

Animals

Distribution of noncollagenous proteins in the matrix of adult human bone: evidence of anatomic and functional heterogeneity.

The microanatomic distribution of several noncollagenous proteins (NCPs) in bone matrix was examined by immunohistochemical analysis of glycol-methyl methacrylate-embedded normal adult human bone biopsies. Osteopontin and bone sialoprotein stained throughout the lamellae of both trabecular and cortical bone. Cement lines (cortical and trabecular) and the mineralized matrix immediately adjacent to each Haversian canal were intensely stained. Osteocalcin was detected in cement lines; however, lamellar staining varied depending on the location within the individual unit of bone. In cortical bone, the inner concentric lamellae of osteons were often unstained but the outer lamellae were heavily stained for osteocalcin. Osteonectin was not detected in cement lines and in most specimens revealed a pattern similar to that of osteocalcin with respect to the absence of immunostaining within the inner concentric lamellae. Decorin was prominent in the perilacunar matrix, the canaliculi of osteocytes, and the matrix immediately adjacent to quiescent Haversian canals. Biglycan appeared evenly distributed throughout cortical and trabecular bone matrix. These results suggest that the incorporation of NCPs into matrix may vary depending on the stage of formation of individual bone units. The specific distribution and spatial relationship of these NCPs may be related to the function of each protein during bone resorption and formation. The distinct patterns of NCP localization in bone support the hypothesis that in addition to their structural and mineral-inducing properties, these proteins may influence the events associated with bone remodeling, such as recruitment, attachment, differentiation, and activity of bone cells.

Adult

Mitogen-stimulated lymphocytes release biologically active corticotropin.

We demonstrate that mitogen-activated lymphocytes release a biologically active form of ACTH that stimulates the in vitro release of corticosterone from cocultured rat adrenal cells. Neither nonstimulated lymphocytes nor the addition of mitogens alone to adrenal cell cultures had an effect. The steroidogenic activity could be neutralized by rabbit anti-ACTH serum, but not by a nonimmune serum. Both Concanavalin-A- and lipopolysaccharide-stimulated lymphocytes secrete an ACTH-like molecule with an antigenic specificity identical to pituitary-derived ACTH. Further, the amount of measurable immunoreactive ACTH was far lower than the amount of exogenously added ACTH required to evoke such a vigorous glucocorticoid response, suggesting that local deposition of the hormone results in a higher effective ACTH concentration. In addition, lymphocytes physically isolated from adrenal cells by a semipermeable membrane could stimulate steroidogenesis by 48 h, which corresponds to the rise in ACTH detected by RIA. These results confirm that activated lymphocytes synthesize as well as release biologically active ACTH, thus providing an in vitro model for a bidirectional communication between the endocrine and immune systems.

Adrenal Glands

Regulation of parathyroid hormone release by protein kinase-C is dependent on extracellular calcium in bovine parathyroid cells.

The purpose of this study was to evaluate regulation of PTH secretion by protein kinase-C (PKC) in adult bovine parathyroid cells. Extracellular calcium (Ca2+e) is the main physiological regulator of PTH secretion. Putative second messengers include intracellular calcium (Ca2+i), cAMP, inositol trisphosphate, and diacylglycerol (DAG). Both DAG and Ca2+i activate PKC. Certain phorbol esters mimic the effect of DAG and cause prolonged stimulation of PKC. The stimulatory phorbol esters 12-O-tetradecanoylphorbol acetate (1 microM) and phorbol-12,13-dibutyrate (1 microM) did not affect PTH secretion at low Ca2+e, but increased both individual cell secretion and recruitment of cells to secrete at high Ca2+e. The PKC inhibitors H7 (1 microM), tamoxifen (10 microM), and sphinganine (5 microM) inhibited PTH release at low Ca2+e (0.1 and 0.2 mM) and decreased cell recruitment over the physiological range of Ca2+e. The nonstimulatory phorbol esters 4 alpha-phorbol-12,13-didecanoate (1 microM) and phorbol-13-monoacetate (1 microM) had no effect on PTH secretion. To assess the mechanism by which certain phorbol esters stimulated PTH secretion, in situ hybridization for PTH mRNA was performed. Phorbol-12,13-dibutyrate (1 microM) qualitatively increased steady state PTH mRNA levels compared to control values. We conclude that 1) PKC stimulation increased PTH secretion at high Ca2+e, but not at low Ca2+e; 2) PKC inhibition decreased PTH secretion at low Ca2+e; and 3) PKC stimulation increased steady state PTH mRNA levels. These data suggest that PKC plays an important regulatory role in the synthesis and secretion of PTH.

Animals

beta-Phosphorothioate analogs of nucleotide sugars are resistant to hydrolytic degradation and utilized efficiently by glycosyltransferases.

The alpha- and beta-phosphorothioate analogs of UDP-Gal and UDP-Glc, in which a sulfur is exchanged for a non-bridging oxygen at one of the phosphate groups, have been synthesized and tested for their resistance to enzymatic degradation and for their usefulness in glycosyltransferase reactions. The alpha analogs were found to be no more resistant to hydrolysis than the native nucleotide sugars, but as previously reported (R. B. Marchase et al. (1987) Biochim. Biophys. Acta 916: 157) the beta S analogs were approximately 10 times more resistant. The beta S analog and native UDP-Glc were found to have comparable Km's when used in assays for glucosylphosphoryl dolichol synthase with rat liver and hen oviduct microsomes, although the apparent Vmax of the reaction was about twofold higher for the analog, presumably due to its resistance to degradation. Partially purified 4 beta-galactosyltransferase exhibited a Vmax with (beta S)UDP-Gal that was only slightly lower than that with UDP-Gal and a Km that was slightly increased. The effectiveness of the analog was especially apparent in assays for 4 beta-galactosyltransferase on intact sperm and in rat liver homogenates, in which hydrolysis of the normal substrate was very rapid and net incorporation was at least 4 times greater with the beta S analog in each system.

Animals

A monoclonal anti-peptide antibody mimics adrenocorticotropic hormone activity.

A monoclonal antibody that specifically recognizes the adrenocorticotropic receptor (ACTH) on rat adrenal cells was tested for hormonal activity. The antibody behaved as an agonist based on three different biological activities associated with ACTH. An antibody concentration of 16 micrograms/ml stimulated isolated rat adrenal cells to secrete 800 ng/10(4) cells of corticosterone with a concomitant 10-fold increase of cAMP to 30 pmol/10(5) cells. Antibody concentrations above 16 micrograms/ml inhibited mitotic activity in mouse Y-1 adrenal cells. A radio-immunoassay using an anti-ACTH antibody showed that the monoclonal anti-adrenocorticotropic receptor antibody and ACTH are antigenically related. These findings suggest that the anti-receptor antibody recognizes the ligand binding domain of the ACTH receptor.

Adrenal Cortex

Modulation of IgM secretion and H chain mRNA expression in CH12.LX.C4.5F5 B cells by adrenocorticotropic hormone.

The murine B cell line CH12.LX.C4.5F5 (CH12 (5F5) expresses adrenocorticotropin (ACTH) receptors, which can modulate IgM secretion by these cells. Interestingly, the response to ACTH was concentration dependent, inducing IgM secretion at subnanomolar amounts and suppressing secretion at micromolar amounts. With the use of an enzyme-linking immunospot assay it was possible to demonstrate that the ACTH-induced increase in IgM secretion by CH12 (5F5) cells was caused at least in part by an increase in the number of cells secreting IgM. CH12 (5F5) cells activated with suboptimal concentrations of LPS demonstrated a similar biphasic response. ACTH at concentrations of 10(-13) to 10(-9) M augmented IgM secretion in LPS-activated cells as much as sixfold, whereas 10(-6) M ACTH slightly decreased LPS-induced IgM secretion. At the mRNA level, subnanomolar concentrations of ACTH increased microH chain mRNA expression up to twofold in unstimulated or LPS-stimulated CH12 (5F5) cells. Taken together, these studies show that physiologically relevant concentrations of ACTH can interact directly with receptors on these B lymphocytes to enhance IgM secretion and microH chain mRNA expression. Although ACTH does increase intracellular cAMP levels in CH12 (5F5) B cells, it is unlikely that the induction of this second messenger pathway is by itself responsible for the ACTH induced B cell differentiation. The concentration of ACTH necessary to stimulate significant intracellular cAMP increases was 10- to 100-fold higher than that required to increase IgM secretion. Furthermore, CH12 (5F5) cells treated with varying concentrations of 8-bromo cAMP or cholera toxin were inhibited in their ability to secrete IgM. These results strongly suggest that the enhancing effects of ACTH on CH12 (5F5) IgM secretion are via mechanisms independent of those mediated by cAMP.

8-Bromo Cyclic Adenosine Monophosphate

A monoclonal anti-peptide antibody recognizes the adrenocorticotropic receptor.

We have produced a monoclonal antibody that specifically recognizes the adrenocorticotropic receptor on rat adrenal cells. The immunogen was designed from an RNA sequence complementary to the mRNA coding for ACTH1-24. This complementary peptide, termed HTCA, has been shown to specifically bind ACTH and was proposed to mimic the ACTH binding site of the hormone receptor. The monoclonal anti-HTCA antibody recognized a restricted domain of the HTCA peptide, bound to Y-1 adrenal cells with a KD of 1.8 nM, and blocked the binding of 125I-ACTH to rat adrenal cells. These findings show that anti-HTCA competes with ACTH for binding to the ACTH receptor.

Adrenal Medulla

The surface activity of the same subpopulation of galactosyl receptors on isolated rat hepatocytes is modulated by colchicine, monensin, ATP depletion, and chloroquine.

In this study, we characterized and compared the ligand-independent loss of surface galactosyl (Gal) receptor activity on isolated rat hepatocytes treated with monensin, chloroquine, microtubule depolymerizing agents, or NaN3 and NaF at 37 degrees C. Freshly isolated hepatocytes exhibit predominately one subset of surface Gal receptors, termed State 1 receptors (Weigel, P. H., Clarke, B. L., and Oka, J. A. (1986) Biochem. Biophys. Res. Commun. 140, 43-50). During equilibration at 37 degrees C, these cells also express a second subset of Gal receptors at the surface, termed State 2 receptors, and routinely double their total surface Gal receptor activity. Following equilibration at 37 degrees C and then inhibitor treatment, hepatocytes bound 40-60% less 125I-asialoorosomucoid (ASOR) at 4 degrees C than did untreated cells. Treated cells maintained a basal nonmodulated level of surface receptor activity regardless of temperature, perturbant concentration, or incubation time. Loss of surface Gal receptor activity on cells treated with multiple inhibitors simultaneously or sequentially was not additive. Thus, all treatments affected the same subpopulation of surface Gal receptors. None of these inhibitors decreased surface State 1 Gal receptor activity, but all prevented the normal appearance of State 2 Gal receptors on freshly isolated cells during incubation at 37 degrees C. The endocytic capability of residual surface State 1 Gal receptors on inhibitor-treated cells varied depending on the inhibitor. Hepatocytes treated first at 24 degrees C or with colchicine at 37 degrees C internalized greater than 85% of surface-bound 125I-ASOR. In contrast, monensin- or chloroquine-treated cells internalized approximately 50% of surface-bound 125I-ASOR. Azide-treated cells internalized less than 20% of surface-bound 125I-ASOR. We conclude that only surface State 2 Gal receptor activity is sensitive to these various perturbants. State 1 Gal receptor activity is not modulated. These data are consistent with the conclusion that only State 2 Gal receptors constitutively recycle.

Adenosine Triphosphate

Steroidogenic activity of a peptide specified by the reversed sequence of corticotropin mRNA.

The molecular recognition theory predicts that a reversed (3'----5') reading of an mRNA should yield a peptide that is structurally and functionally similar to that specified in the 5'----3' direction. We tested this idea by synthesizing a corticotropin (ACTH) analogue using a reverse reading of bovine mRNA for ACTH-(1-24). This peptide, designated ACTH-3'----5', had a similar hydropathic profile to native ACTH-5'----3' but had only 30% sequence homology and eight different charge substitutions. ACTH-3'----5' specifically bound to the surface of mouse Y-1 adrenal cells and to polyclonal anti-ACTH antibody. Additionally, ACTH-3'----5' stimulated cAMP synthesis and steroidogenesis in adrenal cells. These findings show that ACTH-3'----5' mimics the corticotropic properties of native ACTH, thereby further validating the molecular recognition theory.

Adrenal Glands

Differential effects of leupeptin, monensin and colchicine on ligand degradation mediated by the two asialoglycoprotein receptor pathways in isolated rat hepatocytes.

We have shown that degradation of asialo-orosomucoid (ASOR) in isolated rat hepatocytes occurs by two different intracellular pathways [Clarke, Oka & Weigel (1987) J. Biol. Chem. 262, 17384-17392] mediated by two subpopulations of cell surface galactosyl (Gal) receptors, designated State 1 or State 2 receptors. In the present study, several inhibitors were tested for their effects on ligand degradation by the State 1 or State 2 pathway. Leupeptin, monensin and chloroquine completely inhibited degradation of 125I-labelled ASOR in both pathways. Dose-response studies showed, however, that the State 2 pathway was more sensitive to leupeptin or monensin than the State 1 pathway. No differences were observed with chloroquine. For example, the onset of inhibition in the State 2 and State 1 pathways occurred at about 0.05 and 0.3 microM-leupeptin respectively, a 6-fold difference. At 3.5 microM-monensin, 125I-ASOR degradation in the State 2 pathway was completely blocked, whereas degradation in the State 1 pathway was essentially unaffected. Colchicine was observed to give the largest differential sensitivity between the two pathways. The State 2 degradation pathway was about 30-fold more sensitive to colchicine than the State 1 pathway. Lumicolchicine had no affect. The onset of inhibition of the rate of 125I-ASOR degradation in the State 2 and State 1 pathways occurred at approximately 0.1 and 3.0 microM-colchicine respectively. At very high concentrations (greater than 0.1 mM), the State 1 pathway could be completely inhibited. We conclude that intracellular 125I-ASOR processing or delivery to degradative compartments in both the State 1 and State 2 Gal receptor pathways requires low pH. Ligand delivery to the degradative compartment does not require microtubules in the State 1 pathway, consistent with the very rapid onset of degradation in this pathway. The State 2 degradation pathway does require microtubules.

Animals

Differential expression of functional adrenocorticotropic hormone receptors by subpopulations of lymphocytes.

In an effort to investigate the presence of adrenocorticotropic hormone (ACTH) receptors on rat lymphocytes, cells were separated by a panning procedure into T and B cell populations. By using the radiolabeled ACTH agonist, (125I-Tyr23) phenylalanine2-norleucine4-ACTH1-24, substantial numbers of ACTH binding sites were detected on T and B lymphocytes, but not on thymocytes. Scatchard analysis revealed two types of binding sites on each cell population, one with Kd1 = 0.088 +/- 0.025 nM and one with Kd2 = 4.2 +/- 0.6 nM; however, the absolute number of binding sites per cell was different. B lymphocytes expressed approximately three times the number of Kd1 binding sites per cell when compared with T lymphocytes. However, ACTH receptor expression by these cell populations was not static as suggested by the ability to induce receptor expression via mitogens. B or T cells and thymocytes stimulated with the mitogens LPS or Con A, respectively, substantially increased their number of Kd1 binding sites per cell (approximately three-fold). Even more dramatic increases in Kd1 receptor expression (approximately 100-fold) were observed when comparing "normal" and stimulated thymocytes. To demonstrate that these ACTH binding sites were in fact functional, cAMP levels were measured in lymphocytes 10 min after exposure to varying concentrations of ACTH. Dose-dependent increases in cAMP levels were observed, with significant stimulation occurring with as little as 0.1 nM ACTH added. Taken together, these studies demonstrate the presence of functional ACTH receptors on normal, rat T and B lymphocytes.

Adrenocorticotropic Hormone